Oxidation Study of Pure Fe and Fe-36Ni Alloy at Elevated Temperature

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There have been many studies on the oxidation of pure iron and steel at different temperatures and pressures. D. Caplan et al. demonstrated the effect of cold-work and metal grain size on the oxidation rate of iron. It was concluded that the oxidation rate of iron was accelerated with temperature, cold-work, and increased oxygen pressure, while the oxidation rate of iron, coarse-or fine-grained, cold-worked or annealed, was found to be the same at the FeO-forming temperature range [1-3].

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784-788

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June 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] J.A. Szpunar and B.K. Kim: Mater. Sci. Forum Vol. 539 (2007), p.223

Google Scholar

[2] L. Jansson and N. Vannerberg: Oxi. of Metals Vol. 3 (1971), p.453

Google Scholar

[3] D. Caplan, R.J. Hussey, G.I. Sproule, and M.J. Graham: Corr. Sci. Vol. 21 (1981), p.689

Google Scholar

[4] R.T Foley and C.J. Guare: J. Electrochem. Soc. Vol.106 No. 11 (1959), p.936

Google Scholar

[5] T.J. Carter, G.L. Wulf, and G.R. Wallwork: Corr. Sci. Vol. 9 (1969), p.471

Google Scholar

[6] M.J. Brabers, W.J. Heideger, and C.E. Birchenall: J. Chim. Phy. Vol. 53 (1956), p.810

Google Scholar

[7] M.J. Brabers and C.E. Birchenall: Corrosion Vol. 14 (1958), p.179

Google Scholar

[8] G.L. Wulf, T.J. Carter, and G.R. Wallwork: Corr. Sci. Vol. 9 (1969), p.689

Google Scholar

[9] M.A. Rhamdhani, P.C. Hayes, and E. Jak: Matell. Mater. Trans. B, Vol. 39B (2008), p.690

Google Scholar